平行板反应器中存在化学反应和产热时的双扩散混合对流传热传质

S. Parvin, M. Alim, N. Hossain
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引用次数: 1

摘要

本文对平行板反应器中层流双扩散混合对流的传热传质过程进行了数值分析。反应物流体从左入口进入,从右出口流出。假定反应器的所有固体壁都是热力学隔离的。进入反应器后,流体通过四个加热的圆筒。二维连续性、动量、能量和浓度方程控制了所开发的数学模型。采用三角网格离散化系统的伽辽金有限元法求解控制无量纲方程。研究的目的是说明在反应过程中释放的能量对热敏性化学品的速度、热场和浓度的影响。对不同的化学反应参数和产热参数组合进行了数值模拟。从流线、温度和浓度分布等方面给出了结果。结果表明,传热传质速率与上述参数密切相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HEAT AND MASS TRANSFER DUE TO DOUBLE DIFFUSIVE MIXED CONVECTION IN A PARALLEL PLATE REACTOR IN PRESENCE OF CHEMICAL REACTION AND HEAT GENERATION
The present paper aims to analyze numerically the heat and mass transfer for laminar double-diffusive mixed convection flow in a parallel plate reactor with heat generation and chemical reaction. The reactant fluid enters from the left inlet and exits from the right outlet. All solid walls of the reactor are assumed to be thermodynamically isolated. After entering the reactor, the fluid passes four heated cylinder. Two-dimensional continuity, momentum, energy and concentration equations govern the developed mathematical model. Galerkin finite element method with triangular grid discretization system is used to solve the governing non-dimensional equations. The aim of the investigation is to illustrate the effects of the energy expelled during the reaction, on velocity, the thermal field and concentration of the heat sensitive chemical. Numerical simulations are conducted for different combinations of chemical reaction parameter and heat generation parameter. Results are presented in terms of streamlines, temperature and concentration distributions. The results reveal that the heat and mass transfer rate strongly depend on the mentioned parameter.
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